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Real-Time Applications with Stochastic Task Execution Times [electronic resource] : Analysis and Optimisation / by Sorin Manolache, Petru Eles, Zebo Peng.

Por: Colaborador(es): Tipo de material: TextoTextoEditor: Dordrecht : Springer Netherlands, 2007Descripción: XIV, 152 p. online resourceTipo de contenido:
  • text
Tipo de medio:
  • computer
Tipo de soporte:
  • online resource
ISBN:
  • 9781402055096
  • 99781402055096
Tema(s): Formatos físicos adicionales: Printed edition:: Sin títuloClasificación CDD:
  • 621.3815 23
Recursos en línea:
Contenidos:
Related Work -- System Modelling -- Analysis of Monoprocessor Systems -- Analysis of Multiprocessor Systems -- Deadline Miss Ratio Minimisation -- Conclusions.
En: Springer eBooksResumen: Real-Time Applications with Stochastic Task Execution Times presents three approaches to the analysis of the deadline miss ratio of applications with stochastic task execution times. Each of the three approaches fits best to a different context. The first approach is an exact one and is efficiently applicable to monoprocessor systems. The second approach is an approximate one, which allows for designer-controlled trade-off between analysis accuracy and analysis speed. It is efficiently applicable to multiprocessor systems. The third approach is less accurate but sufficiently fast in order to be placed inside optimisation loops. Based on the last approach, we propose a heuristic for task mapping and priority assignment for deadline miss ratio minimisation.
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Item type Current library Collection Call number Status Date due Barcode
Libros electrónicos Libros electrónicos CICY Libro electrónico Libro electrónico 621.3815 (Browse shelf(Opens below)) Available

Related Work -- System Modelling -- Analysis of Monoprocessor Systems -- Analysis of Multiprocessor Systems -- Deadline Miss Ratio Minimisation -- Conclusions.

Real-Time Applications with Stochastic Task Execution Times presents three approaches to the analysis of the deadline miss ratio of applications with stochastic task execution times. Each of the three approaches fits best to a different context. The first approach is an exact one and is efficiently applicable to monoprocessor systems. The second approach is an approximate one, which allows for designer-controlled trade-off between analysis accuracy and analysis speed. It is efficiently applicable to multiprocessor systems. The third approach is less accurate but sufficiently fast in order to be placed inside optimisation loops. Based on the last approach, we propose a heuristic for task mapping and priority assignment for deadline miss ratio minimisation.

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